首页> 外文会议>V Latin American Congress on Biomedical Engineering >Microparticulas de Quitosana Recubiertas con un Complejo Interpolimerico pH Dependiente para Liberacion Controlada de Dexametasona
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Microparticulas de Quitosana Recubiertas con un Complejo Interpolimerico pH Dependiente para Liberacion Controlada de Dexametasona

机译:壳聚糖的微粒涂有互聚合物络合物pH,依赖于地塞米松的控释释放

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Many active ingredients tend to cause undesirable effects when administered orally, as it is the case of anti-inflammatory drugs that produce irritation in the stomach. An alternative to this problem is the microencapsulation of these substances in a suitable matrix. Chitosan because of its excellent properties: non-toxic, biocompatible, biodegradable and anti-ulcer activity is a polymer widely used for this purpose. In the present study chitosan (QUI) microparticles were prepared by a simple coacervation procedure followed by cross-linkig with sodium tripolyphosphate (TPP). The microparticles were loaded with dexamethasone and then were coated with a pH-sensitive interpolymer complex based on poly (acrylic acid) (PAA) and poly(ethylene glycol) (PEG) of different molecular weights, to prevent its release and degradation in the stomach. The study of complex formation in water solution revealed that increasing molecular weight of PEG increases the stabuity of the formed complex. The particles were characterized by scanning electron microscopy (SEM). It was observed that particles had a smooth surface that became rough after being covered by the polymer mixture. The in vitro release study of dexamethasone encapsulated was carried out in simulated fluids, gastric (pH = 1.2) and intestinal (pH = 6.8). Dexamethasone release from the coated microparticles in simulated gastric fluid was significantly reduced as compared with the non-coated particles. The dexamethasone released was determined by UV-Visible spectroscopy at 242 nm.
机译:许多活性成分往往会引起不期望的效果,当口服给药时,因为它是抗炎药的情况下,在胃内产生刺激。对这个问题的替代方案是这些物质在合适的基质微囊包封。由于其优异的性能的脱乙酰壳多糖:无毒,生物相容的,可生物降解的和抗溃疡活性是广泛用于此目的的聚合物。在本研究中脱乙酰壳多糖(QUI)微粒通过简单的凝聚过程,随后通过交linkig用三聚磷酸钠(TPP)制备。将微粒装入地塞米松,然后涂覆有基于聚对pH敏感的共聚体复合物(丙烯酸)(PAA)和聚(乙二醇)(PEG)分子量不同的,以防止在胃中的释放和降解。在水溶液的复合物形成的研究表明PEG的持续增加的分子量增加了形成的复合物的stabuity。通过扫描电子显微镜(SEM)粒子进行了表征。据观察,颗粒具有光滑的表面,成为被覆盖的聚合物混合物后粗糙。地塞米松包封的体外释放研究在模拟的体液中进行,胃(pH值= 1.2)和肠(pH值= 6.8)。从模拟胃液涂覆的微粒地塞米松释放显著降低与非涂覆的颗粒相比。释放的地塞米松,通过紫外 - 可见光谱在242纳米测定。

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